ΤΩ ΖΩ 29. www 3 Α Μ 3 Ω ΖΩ 5Ω 4Ω 6Ω Figure 4: A sample circuit with 9 elements (2 2 A Fig Determine the nodal voltages in the circuit shown in Figure
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- A 15-F AC capacitor is connected in series with a 50 resistor. The capacitor has a voltage rating of 600 WVDC. The capacitor and resistor are connected to a 480-V, 60-Hz circuit. Is the voltage rating of the capacitor sufficient for this connection?Determine the loop currents Ia, I,, and Ic. 100 Ic 100 100 100 100 Ib 55V 100 V laPower supply circuit is delivering 0.5 A and an average voltage 20 V to the load as shown in the circuit below. The ripple voltage of the half wave rectifier is 0.5 V and the diode is represented using constant voltage model. The smoothing capacitor value is equal to り:1 L-Dc こ0SA ドL VL-De =20V 220V omsh 0.01 F 0.02 F O 0.0167 F None of the above A Moving to another question will save this response. « F8 F10 %$4 48 & 50 67 7V 8人 99 1O 3. F GJ H. K. Corll %24
- Convert the circuit from a T to a pi configurationQ-A diode has a forward resistance of 2002 is connected in series with a resistive load of 10000. The circuit is fed through a 230 V, 50 Hz ac supply, the dc load current in the circuit will be Vm= √2 230V D R = 10000Solve the approximate value of Ic of Figure 45. Vcc T16V R1 33.9ka 68kN Vc Q1 Beta = 85 - VE R2 9.1ka S0.72KΩ
- help with this circuit TYIAA Capacitor filter is used at the output across the load to minimize the ripple factor of the output voltage. If R = 20 02 and the single- phase bridge rectifier is supplied from a 120V - 60 Hz sinusoidal source. Find the capacitor value in millifarads that will maintain the amount of the output ripples to less than 5% 艹 Ce = m₂ 0 mF RL%Determine the regulated output voltage of the circuit in Figure D IN4O02 Vour LM317 R 2402 D2 ADI IN4002 120 V ms 470uF 1.8 kQ 000
- 2.0 a. TMP35 b. TMP36 c. TMP37 +Vs - 3V Using the appropriate curve, develop a linear equation for the output temperature as a function of voltage. 1.8 1.6 E 1.4 1.2 1.0 0.8 0.6 0.4 0.2 -50 -25 25 50 75 100 125 TEMPERATURE (*C) Figure 6. Output Voltage vs. Temperature OUTPUT VOLTAGE (V) 200-20C 00Subject: Fundamental of Electronics Question: Do Theoretical Calculation to get value for VClipper PRZ v 22.347V RI ww 1602 Vi 30V 60Hz 0° a. Positive Clipper Circuit PRZ O V29.057V RI VI 30V 60Hz 0° ww 1kQ PRI PRI v 22.347V D1 v 29.057V DI 1 Hile V2 5V c. Positive Clipper Circuit + Bias Voltage PRAV-23.991V R1 VI 30V 60Hz 0º PRZ 0 1k02 b. Negative Clipper Circuit v-28.305VR1 V1 30V 60Hz 8 1 140 PREV-23.991V PRI DI v-28.305V 01 3 V2 5V d. Negative Clipper Circuit + Bias VoltageThe diodes in the circuit in Figure Q7 have V = 0.7. Determine the output voltage Vo and the currents Ip1, ID2, D3, and I for the following input conditions: V₁ = 2V V₂ = 3V *** In which all the diodes are ON state Parameter Valuc 101 = 6.05 A D2 = 665 9.05 N 9.65A 03 Vo = 5.725 1 - 10 - 19.50 -0.7 - 5 = 0.45m²ß U. = 10 19. H - (.45mA x 9.5 KR) = 5.725 W : 5.75 -02:22 0.5. k IN S. 725-0-7-7 6.05 m/ 3 4.0% XIU A 27 2 3 Vo 05 kQ 0.5 k 120 www IDI 1pz D₁ D₂ Figure Q7 +10 V lost [ f +5 V 9.5 KQ D ovo 77°F Clear